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Updated: Apr 30, 2026

Procedure for Human Saphenous Veins Ex Vivo Perfusion and External Reinforcement
Published on: October 1, 2014
Pressure control during preparation of saphenous veins
Fan Dong Li1, Susan Eagle2, Colleen Brophy3
1General Hospital of Jinan Military District, Jinan, China.
Insights
Vein graft failure is reduced by using a pressure release valve (PRV) during preparation. This simple device preserves endothelial function and prevents intimal thickening, improving long-term patency in coronary artery bypass grafting.
Area of Science:
- Cardiovascular Surgery
- Vascular Biology
- Biomedical Engineering
Background:
- Vein graft failure (VGF) limits long-term patency in coronary artery bypass grafting (CABG).
- VGF, occurring in up to 45% of cases, leads to adverse cardiovascular events and reoperation.
- Conduit injury during graft preparation, particularly pressure distension, is a suspected contributor to VGF.
Purpose of the Study:
- To determine if pressure distension during human saphenous vein (HSV) preparation causes endothelial injury and intimal thickening.
- To evaluate if a pressure release valve (PRV) can mitigate these effects by limiting intraluminal pressure.
- To assess the impact of PRV use on endothelial function and neointima formation.
Main Methods:
- Human saphenous veins (HSVs) and porcine saphenous veins (PSVs) were collected and prepared.
- HSVs were analyzed immediately after harvest (unmanipulated), after pressure distension (AD), and after typical manipulation (AM).
- PSVs underwent manual distension with or without an in-line PRV, followed by assessment of endothelial function, integrity, and intimal thickening via organ culture.
Main Results:
- Pressure distension of HSVs significantly decreased endothelial-dependent relaxation and caused denudation.
- PSVs subjected to manual distension showed reduced endothelial function, denudation, and increased intimal thickening compared to controls.
- Distension with a PRV in PSVs preserved endothelial function, prevented denudation, and significantly reduced intimal thickening.
Conclusions:
- Manual pressure distension during vein graft preparation injures the endothelium and promotes intimal hyperplasia.
- A pressure release valve (PRV) effectively limits intraluminal pressure, preserving endothelial integrity and reducing intimal thickening.
- Incorporating a PRV into graft preparation may enhance long-term vein graft patency in CABG procedures.
Importance:
Long-term patency of human saphenous veins (HSVs) used as autologous conduits for coronary artery bypass grafting (CABG) procedures remains limited because of vein graft failure (VGF). Vein graft failure has been reported to be as high as 45% at 12 to 18 months after surgery and leads to additional surgery, myocardial infarction, recurrent angina, and death. Preparation of HSVs before implantation leads to conduit injury, which may promote VGF.
Objectives:
To investigate whether pressure distension during vein graft preparation leads to endothelial injury and intimal thickening and whether limiting intraluminal pressure during pressure distension by using a pressure release valve (PRV) preserves endothelial function and prevents neointima thickening.
Design, Setting, And Participants:
Segments of HSVs were collected in a university hospital from 13 patients undergoing CABG procedures immediately after harvest (unmanipulated [UM]), after pressure distension (after distension [AD]), and after typical intraoperative surgical graft preparation (after manipulation [AM]). Porcine saphenous veins (PSVs) from 7 healthy research animals were subjected to manual pressure distension with or without an in-line PRV that prevents pressures of 140 mm Hg or greater. Endothelial function of the HSVs and PSVs was determined in a muscle bath, endothelial integrity was assessed, and intimal thickening in PSVs was evaluated after 14 days in organ culture.
Main Outcomes And Measures:
Endothelial function was measured in force, converted to stress, and defined as the percentage relaxation of maximal phenylephrine-induced contraction. Endothelial integrity was assessed by immunohistologic examination. Neointimal thickness was measured by histomorphometric analysis.
Results:
Pressure distension of HSVs led to decreased mean (SEM) endothelial-dependent relaxation (5.3% [2.3%] for AD patients vs 13.7% [2.5%] for UM patients; P < .05) and denudation. In the AM group, the function of the conduits was further decreased (-3.2% [3.2%]; P < .05). Distension of the PSVs led to reduced endothelial-dependent relaxation (7.6% [4.4%] vs 61.9% [10.2%] in the control group; P < .05), denudation, and enhanced intimal thickening (15.0 [1.4] µm vs 2.2 [0.8] µm in the control group; P < .05). Distension with the PRV preserved endothelial-dependent relaxation (50.3% [9.6%]; P = .32 vs control), prevented denudation, and reduced intimal thickening (3.4 [0.8] µm; P = .56 vs controls) in PSVs.
Conclusions And Relevance:
Use of a PRV during graft preparation limits intraluminal pressure generated by manual distension, preserves endothelial integrity, and reduces intimal hyperplasia. Integration of this simple device may contribute to improved long-term vein graft patency.
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